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Biot-Granier Sensor: A Novel Strategy to Measuring Sap Flow in Trees

机译:Biot-Granier传感器:一种测量树液流动的新策略

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摘要

The Biot-Granier (Gbt) is a new thermal dissipation-based sap flow measurement methodology, comprising sensors, data management and automatic data processing. It relies on the conventional Granier (Gcv) methodology upgraded with a modified Granier sensor set, as well as on an algorithm to measure the absolute temperatures in the two observation points and perform the Biot number approach. The work described herein addresses the construction details of the Gbt sensors and the characterization of the overall performance of the Gbt method after comparison with a commercial sap flow sensor and independent data (i.e., volumetric water content, vapor pressure deficit and eddy covariance technique). Its performance was evaluated in three trials: potted olive trees in a greenhouse and two vineyards. The trial with olive trees in a greenhouse showed that the transpiration measures provided by the Gbt sensors showed better agreement with the gravimetric approach, compared to those provided by the Gcv sensors. These tended to overestimate sap flow rates as much as 4 times, while Gbt sensors overestimated gravimetric values 1.5 times. The adjustments based on the Biot equations obtained with Gbt sensors contribute to reduce the overestimates yielded by the conventional approach. On the other hand, the heating capacity of the Gbt sensor provided a minimum of around 7 °C and maximum about 9 °C, contrasting with a minimum around 6 °C and a maximum of 12 °C given by the Gcv sensors. The positioning of the temperature sensor on the tip of the sap flow needle proposed in the Gbt sensors, closer to the sap measurement spot, allow to capture sap induced temperature variations more accurately. This explains the higher resolution and sensitivity of the Gbt sensor. Overall, the alternative Biot approach showed a significant improvement in sap flow estimations, contributing to adjust the Granier sap flow index, a vulnerability of that methodology.
机译:Biot-Granier(Gbt)是一种基于热耗散的新液流测量方法,包括传感器,数据管理和自动数据处理。它依靠升级了改进的Granier传感器集的常规Granier(Gcv)方法,以及测量两个观测点的绝对温度并执行比奥数方法的算法。与商用树液流量传感器和独立数据(即,体积水含量,蒸气压赤字和涡度协方差技术)进行比较后,本文所述的工作解决了Gbt传感器的构造细节以及Gbt方法的总体性能表征。在三个试验中对它的性能进行了评估:温室中的盆栽橄榄树和两个葡萄园。在温室中对橄榄树进行的试验表明,与Gcv传感器相比,Gbt传感器提供的蒸腾措施与重量法显示出更好的一致性。这些趋向于高估了最高4倍的汁液流率,而Gbt传感器则高估了1.5倍的重量值。基于使用Gbt传感器获得的Biot方程进行的调整有助于减少传统方法产生的过高估计。另一方面,Gbt传感器的热容量最低为7°C,最高为9°C,而Gcv传感器的最低热值约为6°C,最高12°C。温度传感器在Gbt传感器中建议的树液流针尖端上的位置更靠近树液测量点,可以更准确地捕获树液引起的温度变化。这说明了Gbt传感器具有更高的分辨率和灵敏度。总体而言,替代性的比奥方法在汁液流量估算中显示出显着改进,有助于调整Granier汁液流量指数,这是该方法的脆弱性。

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